MacRae BA, Laing RM and Wilson CA. Importance of air spaces when comparing fabric thermal resistance. Text Res J 2011, doi: 10.1177/0040517510395995.
2.
American Society for Testing and Material. ASTM F1868: Standard test method for thermal and evaporative resistance of clothing materials using a sweating hot plate. PA: American Society for Testing and Materials, 2009.
3.
International Organization for Standardization. ISO 11092: Textiles-Physiological effects-measurement of thermal and water-vapour resistance under steady-state conditions (sweating guarded-hotplate test). Geneva: International Organization for Standardization, 1993.
4.
HolmérI. Heat exchange and thermal insulation compared in woollen and nylon garments during wear trials. Text Res J1985; 55: 511–518.
5.
FarnworthBDolhanPA. Heat loss through wet clothing insulation. Technical Note 82-28, Defense Research Establishment. Ottawa: ON,1984.
6.
McCulloughEAHuangJKimCS. An explanation and comparison of sweating hot plate standards. J ASTM Int2004; 1(7): 1–13.
7.
WangF. Clothing evaporative resistance: Its measurements and application in prediction of heat strain. PhD Thesis: Lund University, Sweden,2011.
8.
LeeYHongKHongSA. 3D quantification of microclimate volume in layered clothing for the prediction of clothing insulation. Appl Ergo2007; 38: 349–355.
9.
DingDTangTSongGMcDonaldA. Characterizing the performance of a single-layer fabric system through a heat and mass transfer model—Part II: thermal and evaporative resistances. Text Res J2011; 81: 945–958.